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Oily wastewater treatment by a continuous flow microbial fuel cell and packages of cells with serial and parallel flow connections

机译:通过连续流动微生物燃料电池和具有串行流动连接的细胞包装的油性废水处理

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摘要

This study reports the results of the application of microbial fuel cells (MFC) in refinery wastewater (RW) treatment. In this research, the effect of hydraulic retention time (HRT), and scale-up on the performance of a novel expandable modular design of single-chamber MFC (SCMFC) has been investigated. In the first part of the paper, the effect of HRT on chemical oxygen demand (COD) removal and electricity generation was examined. The generated steady open-circuit voltage (OCV) was 785 mV at HRT 90 h, and the provided maximum power density (PD) was 113 mW/m(2) at HRT 15 h. At HRT of 45 h, COD removal increased up to 87% via an increase in the HRT. In the second part, the scale-up of SCMFC was investigated by serial (SFC) or parallel (PFC) connecting the outlets and inlets of fluid flows. The average produced OCV was 760 mV in PFC mode, and average produced PD in PFC and SFC modes were 97 and 75.6 mW/m(2), respectively. COD removal in SFC and PFC modes were reported to be 89 and 42%, respectively. Compared to PFC mode, SFC mode was more efficient in terms of COD removal and coulombic efficiency. However, it produced lower PD compared to PFC mode. It is possible to control the quality and capacity of wastewater treatment by using combining the SFC and PFC mode connections in packages of MFCs. (C) 2020 Elsevier B.V. All rights reserved.
机译:本研究报告了微生物燃料电池(MFC)在炼油废水(RW)处理中的应用结果。在该研究中,研究了液压保留时间(HRT)的影响,以及对单室MFC(SCMFC)的新型可扩张模块化设计的性能进行扩大。在本文的第一部分,研究了HRT对化学需氧量(COD)去除和发电的影响。产生的稳定开路电压(OCV)为785mV,在HRT 90 h处为785mV,并且提供的最大功率密度(Pd)在HRT 15 h时为113mW / m(2)。在45小时的HRT,COD去除通过HRT的增加增加了高达87%。在第二部分中,通过连续(SFC)或平行(PFC)来研究SCMFC的缩放,连接出口和流体流动的插口。 PFC模式的平均产生的OCV为760mV,PFC和SFC模式中的平均产生Pd分别为97和75.6mW / m(2)。 SFC和PFC模式中的COD去除分别为89和42%。与PFC模式相比,SFC模式在COD去除和库仑效率方面更有效。但是,与PFC模式相比,它产生了更低的PD。通过使用MFC包中的SFC和PFC模式连接,可以控制废水处理的质量和容量。 (c)2020 Elsevier B.V.保留所有权利。

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